2017
DOI: 10.1103/physreva.96.053802
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Asymmetric Rosen-Zener–like transition through a soliton–surface-plasmon photonic Josephson junction with spatially varying coupling

Abstract: The transition dynamics of photons between an optical soliton in a nonlinear dielectric waveguide and a spatially coupled surface-plasmon excitation on a parallel flat metal surface can be formulated in analogy to that of a Josephson junction of two-level (double-well) Bose-Einstein condensates, albeit with a nonlinear coupling that inherently depends on the population imbalance of the levels. The present work demonstrates that asymmetric Rosen-Zener-like transitions can be obtained through this optical Joseph… Show more

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Cited by 2 publications
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